This thesis describes the frequency stabilization of a 1.54 µm laser diode on an iodine hyperfine line at 514 nm, after a frequency tripling process.An important part of this work is dedicated to the development of the frequency tripling process of a 1.54 µm laser diode, using two periodically polled wave guided Lithium Niobate nonlinear crystals. A nonlinear conversion efficiency P3w/Pw > 36 % is obtained. This result is the best efficiency ever demonstrated for a CW frequency tripling process. 300 mW of harmonic power is generated at 514 nm from a fundamental optical power of 800 mW at 1.54 µm. The optical setup is fully fibered. The total power consumption of this frequency tripling process is 20 W only. Using a specific operation mode, ...
In this paper, a preliminary result for an iodine frequency stabilized tunable diode laser at 633 nm...
We describe He-Ne lasers frequency stabilized by saturated absorption in methane (λ = 3.39 μm) and i...
[[abstract]]We present our work on the frequency stabilization of a 1520 nm distributed feedback dio...
This thesis describes the frequency stabilization of a 1.54 µm laser diode on an iodine hyperfine li...
Cette thèse porte sur le développement d’un dispositif laser à 1,54 µm, triplé en fréquence et stabi...
We have developed an original frequency tripling process based on a compact Telecom laser diode oper...
International audienceWe report on a Telecom laser diode (LD) frequency stabilization to a narrow io...
International audienceWe report on telecom laser frequency stabilization to narrow iodine hyperfine ...
International audienceWe report on the development of an optical frequency standard (OFS) operating ...
[[abstract]]The iodine molecule has frequently been used as a frequency reference from the green to ...
[[abstract]]We present our work on the frequency stabilization of a 1550 nm diode laser by locking i...
[[abstract]]We report, for the first time, the observation of the iodine hyperfine transitions at 53...
Diese Arbeit beschäftigt sich mit der Entwicklung und Untersuchung von optischen Absolutfrequenzrefe...
[[abstract]]By using the second harmonic radiation of a 1543 nm diode laser, several predicted rovib...
International audienceWe present results of investigation and comparison of spectral properties of m...
In this paper, a preliminary result for an iodine frequency stabilized tunable diode laser at 633 nm...
We describe He-Ne lasers frequency stabilized by saturated absorption in methane (λ = 3.39 μm) and i...
[[abstract]]We present our work on the frequency stabilization of a 1520 nm distributed feedback dio...
This thesis describes the frequency stabilization of a 1.54 µm laser diode on an iodine hyperfine li...
Cette thèse porte sur le développement d’un dispositif laser à 1,54 µm, triplé en fréquence et stabi...
We have developed an original frequency tripling process based on a compact Telecom laser diode oper...
International audienceWe report on a Telecom laser diode (LD) frequency stabilization to a narrow io...
International audienceWe report on telecom laser frequency stabilization to narrow iodine hyperfine ...
International audienceWe report on the development of an optical frequency standard (OFS) operating ...
[[abstract]]The iodine molecule has frequently been used as a frequency reference from the green to ...
[[abstract]]We present our work on the frequency stabilization of a 1550 nm diode laser by locking i...
[[abstract]]We report, for the first time, the observation of the iodine hyperfine transitions at 53...
Diese Arbeit beschäftigt sich mit der Entwicklung und Untersuchung von optischen Absolutfrequenzrefe...
[[abstract]]By using the second harmonic radiation of a 1543 nm diode laser, several predicted rovib...
International audienceWe present results of investigation and comparison of spectral properties of m...
In this paper, a preliminary result for an iodine frequency stabilized tunable diode laser at 633 nm...
We describe He-Ne lasers frequency stabilized by saturated absorption in methane (λ = 3.39 μm) and i...
[[abstract]]We present our work on the frequency stabilization of a 1520 nm distributed feedback dio...